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6-羟基黄酮的气管松弛作用、抗哮喘作用和毒理学研究的功能机制。

Functional mechanism of tracheal relaxation, antiasthmatic, and toxicological studies of 6-hydroxyflavone.

机构信息

Facultad de Farmacia, Universidad Autónoma del Estado de Morelos, Cuernavaca, Morelos, Mexico.

Instituto Nacional de Enfermedades Respiratorias, Ciudad de México, Mexico.

出版信息

Drug Dev Res. 2019 Mar;80(2):218-229. doi: 10.1002/ddr.21484. Epub 2018 Nov 5.

Abstract

Previously, we described tracheal rat rings relaxation by several flavonoids, being 6-hydroxyflavone (6-HOF) the most active derivative of the series. Thus, its mechanism of action was determined in an ex vivo tracheal rat ring bioassay. The anti-asthmatic effect was assayed in in vivo OVAlbumin (OVA)-sensitized guinea pigs. Finally, the toxicological profile of 6-HOF was studied based on Organization of Economic Cooperation and Development guidelines with modifications. 6-HOF-induced relaxation appears to be related with receptor-operated calcium channel and voltage-operated calcium channel blockade as the main mechanism of action, and also through the production of relaxant second messengers NO and cGMP. Molecular docking supports that 6-HOF acts as calcium channel blocker and by activation of nitric oxide synthase. In addition, the in vivo anti-asthmatic experiments demonstrate the dose-dependent significant anti-allergic effect of 6-HOF induced by OVA, with best activity at 50 /kg. Finally, toxicological studies determined a LD50 > 2,000 mg/kg and, after 28 day of treatment with 6-HOF (50 mg/kg) by intragastric route, mice did not exhibit evidence of any significant toxicity. In conclusion, experiments showed that 6-HOF exerts significant relaxant activity through calcium channel blockade, and possibly, by NO/cGMP-system stimulation on rat trachea, which interferes with the contraction mechanism of smooth muscle cells in the airways. In addition, the flavonoid shows potential anti-asthmatic properties in an anti-allergic pathway. Furthermore, because the pharmacological and safety evidence, we propose this flavonoid as lead for the development of a novel therapeutic agent for the treatment of asthma and related respiratory diseases.

摘要

先前,我们描述了几种类黄酮对气管大鼠环的松弛作用,其中 6-羟基黄酮(6-HOF)是该系列中最活跃的衍生物。因此,在离体气管大鼠环生物测定中确定了其作用机制。在体内 OVAlbumin(OVA)致敏豚鼠中测定了抗哮喘作用。最后,根据经济合作与发展组织的指导方针并进行了修改,研究了 6-HOF 的毒理学概况。6-HOF 诱导的松弛似乎与受体操作的钙通道和电压操作的钙通道阻断有关,这是主要的作用机制,也通过松弛第二信使 NO 和 cGMP 的产生。分子对接支持 6-HOF 作为钙通道阻滞剂和通过一氧化氮合酶的激活起作用。此外,体内抗哮喘实验表明,6-HOF 对 OVA 诱导的剂量依赖性显著抗过敏作用,在 50 /kg 时活性最佳。最后,毒理学研究确定 LD50>2000mg/kg,并且在通过灌胃途径用 6-HOF(50mg/kg)治疗 28 天后,小鼠没有表现出任何明显毒性的证据。总之,实验表明 6-HOF 通过钙通道阻断发挥显著的松弛活性,并且可能通过 NO/cGMP 系统刺激大鼠气管,从而干扰气道平滑肌细胞的收缩机制。此外,该类黄酮在抗过敏途径中显示出潜在的抗哮喘特性。此外,由于药理学和安全性证据,我们提出将这种类黄酮作为开发新型治疗哮喘和相关呼吸道疾病的治疗剂的先导。

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